Stagg Mark A, Coppen Steven R, Suzuki Ken, Varela-Carver Anabel, Lee Joon, Brand Nigel J, Fukushima Satsuki, Yacoub Magdi H, Terracciano Cesare M N
Cellular Electrophysiology, Heart Science Centre, National Heart & Lung Institute, Imperial College London, Harefield Hospital, London, UK.
FASEB J. 2006 Apr;20(6):744-6. doi: 10.1096/fj.05-5088fje. Epub 2006 Jan 27.
Cell transplantation of skeletal myoblasts (SMs) is one possible treatment for repairing cardiac tissue after myocardial injury. However, inappropriate electrical coupling between grafted SMs and host cardiomyocytes may be responsible for the arrhythmias observed in clinical trials of SM transplantation. Whether functional gap junctions occur between the two cell types remains controversial. We have studied the ability of SMs to electrically couple with isolated adult rat cardiomyocytes (CMs) and assessed whether connexin43 (Cx43) overexpression enhanced gap junctional conductance (Gj). C2C12 myoblast lines overexpressing Cx43 were generated by gene transfection and clonal selection. CMs were cocultured with either SMs overexpressing Cx43 (CM-SM(Cx43)) or control SMs (CM-SM(WT)) in vitro. Gj between pairs of SMs and CMs was quantified with dual whole cell patch clamping. Formation of Gj occurred between 22% of CM-SM(WT) pairs (n=73) and 48% of CM-SM(Cx43) pairs (n=71, P<0.001). The Gj of CM-SM(Cx43) pairs (29.7+/-4.3 nS, n=21) was greater than that of CM-SM(WT) pairs (14.8+/-2.0 nS, n=12, P<0.05). The overexpression of Cx43 in SMs increased the formation of electrical communication and the steady-state conductance between SMs and CMs. Enhanced gap junctional conductance may be useful to promote the integration of transplanted SMs into the myocardium.
骨骼肌成肌细胞(SMs)的细胞移植是心肌损伤后修复心脏组织的一种可能治疗方法。然而,移植的SMs与宿主心肌细胞之间不适当的电偶联可能是SM移植临床试验中观察到的心律失常的原因。两种细胞类型之间是否存在功能性缝隙连接仍存在争议。我们研究了SMs与分离的成年大鼠心肌细胞(CMs)进行电偶联的能力,并评估了连接蛋白43(Cx43)的过表达是否增强了缝隙连接电导(Gj)。通过基因转染和克隆选择产生了过表达Cx43的C2C12成肌细胞系。体外将CMs与过表达Cx43的SMs(CM-SM(Cx43))或对照SMs(CM-SM(WT))共培养。用双全细胞膜片钳定量SMs和CMs对之间的Gj。22%的CM-SM(WT)对(n = 73)和48%的CM-SM(Cx43)对(n = 71,P<0.001)之间形成了Gj。CM-SM(Cx43)对的Gj(29.7±4.3 nS,n = 21)大于CM-SM(WT)对的Gj(14.8±2.0 nS,n = 12,P<0.05)。SMs中Cx43的过表达增加了电通讯的形成以及SMs与CMs之间的稳态电导。增强的缝隙连接电导可能有助于促进移植的SMs与心肌的整合。